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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >On the capillary pressure function in porous media based on relative permeabilities of two immiscible fluids
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On the capillary pressure function in porous media based on relative permeabilities of two immiscible fluids

机译:基于两个不混溶的流体的相对渗透性的多孔介质中的毛细压力函数

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摘要

The authors propose a new analytical approach and derive an explicit formula to determine a capillary pressure (P_c) curve in porous media, by combining the first principles of surface science with the classical concept of the phase relative permeability. The developed formulae for P_c and a modified Leverett J_m-function are based on the relative permeability functions for the wetting and nonwetting phases, an apparent specific surface area, and an apparent (calculated) contact angle Θ. The application of the proposed approach was tested using several sets of data from existing publications. The developed J_m-function can be described using the Weibull distribution model for drainage and imbibition conditions. The new approach can generally be used for any type of relative permeability functions and different types of wetting and nonwetting phases.
机译:作者提出了一种新的分析方法,通过将表面科学的第一个原理与相对渗透性的经典概念相结合,得到一种明确的公式来确定多孔介质中的毛细管压力(P_C)曲线。 P_C和改进的Leverett J_M函数的开发式基于润湿和非雨量相,表观比表面积和表观(计算的)接触角θ的相对磁导率函数。 使用现有出版物的几组数据测试所提出的方法的应用。 可以使用Weibull分布模型来描述开发的J_M函数进行排水和吸收条件。 新方法通常可用于任何类型的相对渗透功能和不同类型的润湿和非纯化相。

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